2002
DOI: 10.1590/s1677-04202002000100008
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Atividade fotossintética e peroxidação de lipídios de membrana em plantas de aroeira-do-sertão sob estresse hídrico e após reidratação

Abstract: Avaliaram-se os efeitos do estresse hídrico e da reidratação sobre parâmetros de fluorescência, condutância estomática e peroxidação de lipídios em plantas de Myracrodruon urundeuva Fr. All. (Anacardiaceae). As plantas foram cultivadas em casa de vegetação e a seca foi induzida por suspensão da irrigação durante 14 dias. Sob estresse hídrico, observou-se queda acentuada no conteúdo relativo de água foliar, o qual alcançou valores próximos a 60 %. Essa queda foi acompanhada por grande diminuição na condutância … Show more

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Cited by 21 publications
(19 citation statements)
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“…Oxidative damages in water-stressed plants of Myracrodruon urundeuva (Queiroz et al 2002), Coffea canephora (Lima et al 2002;Pinheiro et al 2004), Momordica charantia (Agarwal and Shaneen 2007) and Picea asperata (Duan et al 2007) are generally associated to increased MDA content and if plants fail to remove excess of ROS, oxidative damages could be also manifested as chlorotic and necrotic lesions due to chlorophyll degradation, as previously reported in Arabidopsis thaliana (Karpinski et al 1999), Melissa officinalis (Munné-Bosch and Alegre 1999) and Rosmarinus officinalis (Munné-Bosch and Alegre 2000). In the present study, the occurrence of oxidative stress was evaluated in terms of MDA content and electrolyte leakage as well as assessing possible variations in the leaf pigments.…”
Section: Discussionmentioning
confidence: 99%
See 1 more Smart Citation
“…Oxidative damages in water-stressed plants of Myracrodruon urundeuva (Queiroz et al 2002), Coffea canephora (Lima et al 2002;Pinheiro et al 2004), Momordica charantia (Agarwal and Shaneen 2007) and Picea asperata (Duan et al 2007) are generally associated to increased MDA content and if plants fail to remove excess of ROS, oxidative damages could be also manifested as chlorotic and necrotic lesions due to chlorophyll degradation, as previously reported in Arabidopsis thaliana (Karpinski et al 1999), Melissa officinalis (Munné-Bosch and Alegre 1999) and Rosmarinus officinalis (Munné-Bosch and Alegre 2000). In the present study, the occurrence of oxidative stress was evaluated in terms of MDA content and electrolyte leakage as well as assessing possible variations in the leaf pigments.…”
Section: Discussionmentioning
confidence: 99%
“…These ROS are reactive to DNA, RNA, proteins and lipid cell membranes (Mittler 2002;Jaleel et al 2009); and if plants fail to detoxify ROS, oxidative damage is shown in the whole plant as chlorotic and necrotic lesions on damaged leaves (Karpinski et al 1999). In woody species, lipid peroxidation, estimated as equivalents of malondialdehyde (MDA), has been reported in Myracrodruon urundeuva (Anacardiaceae) seedlings under drought conditions, and such damages were quickly attenuated at 6 and 54 h after resumption of irrigation (Queiroz et al 2002). In Coffea canephora, the decrease in pre-dawn leaf water potential (W pd ) from -0.20 to -3.00 MPa increased MDA production by 126% in the drought-tolerant clone (clone 120) against 330% in the drought-sensitive genotype (clone 109A), and electrolyte leakage indicated more pronounced membrane injury in clone 109A (Lima et al 2002).…”
Section: Introductionmentioning
confidence: 99%
“…e Commiphora leptophloeos caracteristicamente em períodos longos de seca, se utilizam da abscisão foliar como forma de economizar água; sendo assim, provavelmente as plantas avaliadas dessas espécies ainda não estavam totalmente sob condições de estresse hídrico, e sem dúvida, essas similaridades nos resultados exprimem justamente a adequação ou adaptação dessas espécies às condições ambientais já relatadas, da área de estudo. Queiroz et al (2002) …”
Section: Eficiência Quântica Do Fotossistema II (Eficiência Fotossintunclassified
“…Lipids are major components of cell membranes; however, the decrease in the amount of root lipids under water deficit is associated with a reduction of lipids in root cellular membranes (Queiroz et al 2002). The high δ 13 C and low amount of root lipids maintain membrane fluidity, reducing the water permeability of the cellular membranes and preserving cell turgidity.…”
Section: Discussionmentioning
confidence: 99%